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The complex ray theory of photodeflection signal formation: Comparison with the ray theory and the experimental results

机译:光偏转信号形成的复射线理论:与射线理论和实验结果的比较

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摘要

A theoretical study of Gaussian probe beam interaction with thermal waves on the basis of the complex geometrical optics equations is presented. This method of describing probe beam propagation in a nonhomogeneous medium, called the complex ray theory, takes into account the influence of the thermal wave on both amplitude and phase of electric field in the probe Gaussian beam. A comparison between the complex ray theory and previously proposed theories is made. Adequate experimental data confirming the correctness of the presented theory are also given. The least-squares procedure was used in multiparameter fitting the theoretical results to the experimental data and some parameters of the experimental setup were determined. It is proven that the complex ray theory allows correct quantitative interpretation of the data obtained in photodeflection experiments.
机译:基于复杂的几何光学方程,提出了高斯探测光束与热波相互作用的理论研究。这种描述探针束在非均匀介质中传播的方法(称为复射线理论)考虑了热波对探针高斯束中电场幅度和相位的影响。将复射线理论与先前提出的理论进行了比较。还给出了足以证明所提出理论正确性的实验数据。将最小二乘程序用于多参数拟合,将理论结果与实验数据进行拟合,并确定实验设置的一些参数。事实证明,复射线理论可以对光偏转实验中获得的数据进行正确的定量解释。

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